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    • 31. 发明授权
    • Floating liner
    • 浮动衬板
    • US07100863B2
    • 2006-09-05
    • US10736861
    • 2003-12-16
    • Christopher HsuDavid J. BartonMichael A. Carroscia
    • Christopher HsuDavid J. BartonMichael A. Carroscia
    • B65H23/00
    • B65H57/18B21C47/20B23K9/133B23K9/1333B65H49/08B65H57/12
    • A floating liner for a container of welding wire which floating liner includes a tube having two ends and a passageway extending between the two ends. The floating liner is unsupported between the top of the container and the retaining ring. The floating liner is designed to provide structural support to the wire and added stiffness or rigidity to the wire to inhibit buckling of the wire, knot formation in the wire that can form between the retaining ring and the top of the container. The floating liner has a weight profile that causes one end of the tube to at least partially float above the top surface of a layer of welding wire or retaining ring in the container as the welding wire is paid out of the container.
    • 用于焊丝容器的浮动衬套,浮动衬套包括具有两个端部的管和在两端之间延伸的通道。 浮动衬垫在容器的顶部和保持环之间没有支撑。 浮动衬套被设计成为钢丝提供结构支撑,并且增加钢丝的刚性或刚性以抑制钢丝的弯曲,可以在保持环和容器顶部之间形成的钢丝中形成结。 浮动衬垫具有重量轮廓,当焊丝从容器中排出时,该配重轮廓使得管的一端至少部分地浮在容器中的焊丝层或保持环的顶表面上方。
    • 32. 发明授权
    • Two stage welder and method of operating same
    • 两级焊机和操作方法相同
    • US07067767B2
    • 2006-06-27
    • US11011467
    • 2004-12-14
    • Christopher Hsu
    • Christopher Hsu
    • B23K9/09
    • B23K9/1056B23K9/092
    • An electric arc GMAW welder is provided, which welder includes a high speed switching power supply with a controller for creating a first or second weld process across the gap between a workpiece and a welding wire advanced toward the workpiece. The first process uses a first current waveform and the second process uses a second current waveform. A circuit is provided for shifting between the first and second weld processes. The shifting circuit includes a counter for counting the waveforms in the first and second processes and a circuit to shift from the process being processed to the other weld process when the waveform count of the weld process being processed reaches a preselected number for such weld process.
    • 提供一种电弧GMAW焊机,该焊机包括一个高速开关电源,带有一个控制器,用于跨工件和向工件前进的焊丝间的间隙产生第一或第二焊接工艺。 第一个进程使用第一个电流波形,第二个进程使用第二个电流波形。 提供了用于在第一和第二焊接工艺之间移动的电路。 移位电路包括用于对第一和第二过程中的波形进行计数的计数器以及当正在处理的焊接过程的波形计数达到用于这种焊接过程的预选数量时从正在处理的工艺转移到另一个焊接过程的电路。
    • 34. 发明授权
    • Welding wire container with ribbed walls and a mating retainer ring
    • 具有肋壁和配合保持环的焊丝容器
    • US06913145B2
    • 2005-07-05
    • US10413492
    • 2003-04-15
    • David J. BartonChristopher Hsu
    • David J. BartonChristopher Hsu
    • B23K9/133B65H49/08B65D85/676B65H49/00
    • B65H49/08B23K9/1333
    • A package for containing and dispensing a coil of welding wire having a coil axis parallel to a package axis, a coil top transverse to the coil axis and radially inner and outer surfaces parallel to the coil axis. The welding wire package includes a container having a bottom and an outer wall structure extending upwardly from the bottom to a top edge, and the outer wall structure has inwardly and outwardly facing surfaces. The package further includes a plurality of ribs extending parallel to the package axis and positioned between the coil outer surface and the inwardly facing surface of the outer wall structure thereby forming gaps between the coil outer surface and the inwardly facing container surface. The welding wire package further including a retainer ring for controlling the dispensing of the welding wire. The retainer ring includes a ring body extending between an inner edge defining an inner opening and an outer peripheral edge, and the outer peripheral edge includes a plurality of projections each extending beyond the outer surface of the wire coil and over a portion of the gaps.
    • 用于容纳和分配具有平行于封装轴线的线圈轴线的焊丝线圈,与线圈轴线横向的线圈顶端以及平行于线圈轴线的径向内外表面的包装。 焊丝包装包括具有从底部向上延伸到顶部边缘的底部和外壁结构的容器,并且外壁结构具有向内和向外的表面。 该封装还包括平行于封装轴线延伸并且位于线圈外表面和外壁结构面向内的表面之间的多个肋,从而在线圈外表面和面向内的容器表面之间形成间隙。 焊丝包装件还包括用于控制焊丝分配的保持环。 保持环包括在限定内部开口的内边缘和外周边缘之间延伸的环体,并且外周边缘包括多个突起,每个突起延伸超过线圈的外表面并在间隙的一部分上方延伸。
    • 35. 发明申请
    • Workpiece support structures and system for controlling same
    • 工件支撑结构及其控制系统
    • US20050045691A1
    • 2005-03-03
    • US10857293
    • 2004-05-28
    • George BlankenshipChristopher HsuJeffrey Klein
    • George BlankenshipChristopher HsuJeffrey Klein
    • B23K37/04
    • B23K37/0452B23K37/04B23K37/0461
    • In accordance with one aspect of the present exemplary embodiment, set forth is a welding system including a plurality of adjustable welding support structures positioned in relationship to each other to permit welding of a workpiece held by a plurality of adjustable welding support structures, each of the support structures having a movable platform. The control system individually controls the position of the movable platform for each of the adjustable welding structures. In another embodiment of the present application, provided is a method for increasing the accuracy at which an adjustable support structure control system positions at least one adjustable support structure. Included in the process is the generation of a model of the adjustable support structure having an initial set of parameters, including structural position parameters and corresponding control element position parameters. A Design Of Experiments process is performed using the adjustable support structure control system to obtain actual structural position parameters and control element position parameters. The parameters of the adjustable model support structure are updated based on the results of the results of the Design Of Experiments, and a compensation mechanism is updated based on the updated parameters of the model support structure, wherein the compensation mechanism is used by the control system to increase the accuracy of positioning of the at least one adjustable support structure.
    • 根据本示例性实施例的一个方面,提出了一种焊接系统,其包括彼此关系定位的多个可调焊接支撑结构,以允许焊接由多个可调焊接支撑结构保持的工件, 具有可移动平台的支撑结构。 控制系统分别控制可调节焊接结构中每个可动平台的位置。 在本申请的另一个实施例中,提供了一种用于提高可调支撑结构控制系统定位至少一个可调支撑结构的精度的方法。 该过程中包括生成具有初始参数集的可调节支撑结构的模型,包括结构位置参数和相应的控制元素位置参数。 实验设计过程采用可调式支撑结构控制系统,实现结构位置参数和控制元件位置参数。 基于实验结果的结果,对可调模型支持结构的参数进行更新,并根据模型支持结构的更新参数更新补偿机制,其中补偿机制由控制系统使用 以增加至少一个可调节的支撑结构的定位精度。
    • 36. 发明申请
    • Welding workpiece support structures
    • 焊接工件支撑结构
    • US20050045690A1
    • 2005-03-03
    • US10856541
    • 2004-05-28
    • George BlankenshipChristopher HsuJeffrey Klein
    • George BlankenshipChristopher HsuJeffrey Klein
    • B23K37/04
    • B23K37/0461B23K37/04B23K37/0452
    • In accordance with one embodiment of the present application, provided is a welding support structure arrangement to support an elongated assembled weldment preparatory to positional welding. The arrangement includes at least one support structure having a support base and a movable platform connected to the support base by spaced-apart 2-bar linkages with center pintels and a series of length adjusting members between the pintels and the support base. A length adjusting member is located between the movable platform and the support base, wherein the lengths of the length adjusting members set the orientation of the movable platform. In accordance with another embodiment of the present application, welding support structures are arranged in a linear array, wherein each of the welding support structures include a movable platform. At least some of the movable platforms of the plurality of support structures are moved to predetermined orientations. Thereafter, the workpiece is positioned onto at least some of the movable platforms of the plurality of support structures.
    • 根据本申请的一个实施例,提供了一种焊接支撑结构装置,用于支撑预备位置焊接的细长组装焊件。 该装置包括至少一个支撑结构,该支撑结构具有支撑基座和可移动平台,该平台通过间隔开的2杆连杆与中心臼轴连接,并且在臼钉和支撑基座之间连接一系列长度调节构件。 长度调节构件位于可移动平台和支撑基座之间,其中长度调节构件的长度设定可移动平台的取向。 根据本申请的另一实施例,焊接支撑结构被布置成线性阵列,其中每个焊接支撑结构包括可移动平台。 多个支撑结构中的至少一些可移动平台被移动到预定的取向。 此后,工件被定位在多个支撑结构的至少一些可移动平台上。
    • 37. 发明授权
    • System and method for estimating true heats of welding processes
    • 用于估计焊接过程真实热量的系统和方法
    • US06730875B2
    • 2004-05-04
    • US10252574
    • 2002-09-24
    • Christopher Hsu
    • Christopher Hsu
    • B23K910
    • B23K9/0956B23K9/0953
    • An arc welding apparatus (10) for performing a waveform-controlled arc welding process includes an arc welding torch (14) that interacts with an associated weld. A power supply (12) applies a selected waveform-controlled power to the welding load via the arc welding torch (14) and a grounding cable over a process interval (Tweld). The power supply (12) includes a sampling circuit (34) for sampling instantaneous current and voltage values of the power during a snip portion (Tsnip) of the process interval (Tweld). A processor (40) is designed to (i) compute a true heat over the snip portion (Tsnip) of the process interval (Tweld), and (ii) extrapolate a true heat over the process interval (Tweld) based thereon.
    • 用于执行波形控制的电弧焊接工艺的电弧焊接装置(10)包括与相关焊缝相互作用的电弧焊炬(14)。 电源(12)通过电弧焊炬(14)和处理间隔(Tweld)上的接地电缆将选择的波形控制功率施加到焊接负载。 电源(12)包括采样电路(34),用于在处理间隔(Tweld)的剪切部分(Tsnip)期间对瞬时电流和电压值进行采样。 处理器(40)被设计为(i)计算处理间隔(Tweld)的剪切部分(Tsnip)上的真实热量,以及(ii)基于此在过程间隔(Tweld)上外推真实热量。
    • 38. 发明授权
    • Electric arc welder and method of designing waveforms therefor
    • 电弧焊机及其波形设计方法
    • US06717108B2
    • 2004-04-06
    • US10252575
    • 2002-09-24
    • Christopher Hsu
    • Christopher Hsu
    • B23K909
    • B23K9/0953B23K9/09B23K9/091B23K9/1062
    • A method of designing a series of waveforms for current cycles generated by a waveform generator to control the waveforms of a welding process performed by an electric arc welder, where the waveforms are stored in a memory stack by work points. The method comprises: integrating the arc current of the waveform designed for each of the many work points to obtain an integrated amount; plotting the integrated amounts for each of the work points; creating a regression curve statistically matching the plotted amounts to reveal outlier amounts; selecting an outlier amount; and, changing the waveform corresponding to the selected outlier amount to decrease the deviation of the integrated amount of the changed waveform from the regression curve.
    • 设计由波形发生器产生的用于当前循环的一系列波形的方法,以控制由电弧焊机执行的焊接过程的波形,其中波形由工作点存储在存储器堆中。 该方法包括:对为多个工作点中的每一个设计的波形的电弧电流进行积分以获得积分量; 绘制每个工作点的综合金额; 创建一个回归曲线,统计匹配绘制的数量以显示异常值; 选择异常值; 并且改变对应于所选异常值的波形,以减小改变波形的积分量与回归曲线的偏差。
    • 39. 发明授权
    • Two stage welder and method of operating same
    • 两级焊机和操作方法相同
    • US06717107B1
    • 2004-04-06
    • US10091278
    • 2002-03-06
    • Christopher Hsu
    • Christopher Hsu
    • B23K910
    • B23K9/1056B23K9/092
    • An electric arc GMAW welder is provided, which welder includes a high speed switching power supply with a controller for creating a first or second weld process across the gap between a workpiece and a welding wire advanced toward the workpiece. The first process uses a first current waveform and the second process uses a second current waveform. A circuit is provided for shifting between the first and second weld processes. The shifting circuit includes a counter for counting the waveforms in the first and second processes and a circuit to shift from the process being processed to the other weld process when the waveform count of the weld process being processed reaches a preselected number for such weld process.
    • 提供一种电弧GMAW焊机,该焊机包括一个高速开关电源,带有一个控制器,用于跨工件和向工件前进的焊丝间的间隙产生第一或第二焊接工艺。 第一个进程使用第一个电流波形,第二个进程使用第二个电流波形。 提供了用于在第一和第二焊接工艺之间移动的电路。 移位电路包括用于对第一和第二过程中的波形进行计数的计数器以及当正在处理的焊接过程的波形计数达到用于这种焊接过程的预选数量时从正在处理的工艺转移到另一焊接过程的电路。